241. Naturally Occurring and Synthetic Coumarin Derivatives: Promising Agents for Managing Neuroinflammation.
作者: Seyedeh Niloufar Ghafouri.;Navid Dastyafteh.;Aida Iraji.;Mohammad Mahdavi.;Mina Saeedi.
来源: Mini Rev Med Chem. 2026年
Neuroinflammation is characterized by the activation of the brain's immune system, mainly involving microglia and astrocytes, in response to injury, infection, or neurodegenerative processes. It leads to neuronal damage, playing a key role in the onset and progression of neurological disorders. Lipopolysaccharide (LPS)-induced models have become pivotal in the study of neuroinflammation and its related complications. Coumarin derivatives-both natural and synthetic derivatives- have shown a promising effect on neuroinflammatory pathways.
242. CCL26-Mediated Modulation of Endothelial Secretome by Hypoxia-Induced Tumor-Derived Exosomes Enhances Metastatic Progression in Head and Neck Cancer.
作者: Ozel Capik.;Sevil Tekman.;Betul Gundogdu.;Ahsen Kilic.;Rumeysa Polat.;Omer Aydin.;Omer Faruk Karatas.
来源: Head Neck. 2026年
Tumor cells adapt to hypoxia by releasing hiTDExs enriched with bioactive molecules that modulate endothelial behavior and promote tumor progression. This study aimed to characterize how hypoxia-induced HNSCC exosomes reshape the endothelial secretome and contribute to metastatic potential.
243. Dental Follicle Stem Cells and Biological Scaffolds in Dental Regenerative Medicine.
作者: Lu Xuan.;Xiaomei Liu.;Jiahao Chen.;Zhuomin Sha.;Jiarui Yang.;Yuanna Zheng.;Hua Li.;Xuepeng Chen.
来源: Tissue Eng Part B Rev. 2026年19373368261419610页
Dental follicle stem cells (DFSCs) originate from the dental follicle during tooth development and possess multilineage differentiation potential, contributing to periodontal tissue regeneration, bone repair, and immunomodulation. This review highlights the recent advances in the application of DFSCs and biological scaffolds for regenerative medicine, with a focus on oral and craniofacial tissue. DFSCs exhibit key advantages for regenerative therapies, including high accessibility, robust self-renewal capacity, and multipotent differentiation potential, enabling their differentiation into odontogenic (dentin- and enamel-forming), osteogenic, and fibroblastic lineages. We discuss the embryonic origin of DFSCS and their unique ability to maintain stable cellular properties in long-term in vitro culture. Importantly, DFSCs play a pivotal role in tooth morphogenesis, periodontal tissue formation, and craniofacial bone regeneration, making them promising for functional oral tissue restoration. A critical aspect of DFSC-based regeneration is the integration with bioactive scaffolds, which provide structural support, promote cell adhesion, proliferation, and differentiation, and facilitate vascularization. We analyze how scaffold properties, such as biodegradability, porosity, and permeability, influence DFSC behavior and therapeutic outcomes. Finally, we explore future challenges and opportunities in optimizing DFSC-scaffold interaction, emphasizing advancements in biomaterial design and emerging bioengineering technologies. Preliminary evidence suggests that integrating DFSCs with engineered scaffold systems may offer potential benefits for personalized regenerative therapies, though further validation is required before clinical translation. Such approaches could contribute to advancing tooth and craniofacial reconstruction strategies. This review consolidates existing insights and explores potential avenues for future research to support advancements in DFSC-based regenerative medicine.
244. Acute and chronic infections drive distinct trajectories in human memory CD4+ T cell formation.
作者: Matthias Reinscheid.;Jill Weisser.;Noah Pascual Maier.;David B Reeg.;Philipp L Hafkemeyer.;Lara Kelsch.;Giuseppe Rusignuolo.;Jakob Arnold.;Florian Emmerich.;Andreas Walker.;Yara Froehlich.;Aparna Cherukunnath.;Jörg Timm.;Simone Picelli.;Bertram Bengsch.; Sagar.;Robert Thimme.;Tobias Boettler.;Maike Hofmann.
来源: Immunity. 2026年
Virus-specific CD4+ T cells are essential for coordinating adaptive immunity during infection, but their differentiation and maintenance in chronic infection remain unclear. Using human hepatitis C virus (HCV) infection as a model, we assessed the determinants of virus-specific CD4+ T cell immunity in acute, spontaneously cleared, chronic, and therapeutically cured infections. During acute infection, multiple subsets of progenitor CD4+ T cells emerged, including subsets that are also found in chronic infection. In chronic infection, stem-like Bcl-2+ CD4+ T cells and T-bet+ effector CD4+ T cells existed in a progenitor/progeny relationship. Following therapy-mediated HCV cure, these cells retained their chronic signature but formed a stable memory pool that persisted for years and was distinct from HCV-specific CD4+ T cell memory after spontaneous clearance. Collectively, our findings highlight differences in CD4+ T cell fates that depend on infection outcomes and reveal common principles of CD4+ and exhausted CD8+ T cell maintenance during and after chronic infection.
245. Multiplexed antigen panel analysis identifies B cell phenotype and receptor genetic contributions to antibody breadth.
作者: Oliver F Wirz.;Prasanti Kotagiri.;Emily Haraguchi.;Katharina Röltgen.;Molly Hunter.;Erin Craig.;Jumana Afaghani.;Ji-Yeun Lee.;Sandra C A Nielsen.;Ramona A Hoh.;Taylor Pursell.;Prabhu S Arunachalam.;Monali Manohar.;Iris Chang.;Jackson P Schuetz.;Brandon Lam.;Andrea Fernandes.;Evan Do.;Donna Smith.;Brian Ha.;Linda Liao.;Javaria Najeeb.;Ana R Otrelo-Cardoso.;Chandler Ho.;Jacob N Wohlstadter.;George B Sigal.;Theodore S Jardetzky.;Stuart A Scott.;Sean Van Slyck.;Mark M Davis.;Bali Pulendran.;Jeremy Minshull.;Benjamin A Pinsky.;Kari C Nadeau.;Claus U Niemann.;Fan Yang.;Scott D Boyd.
来源: Immunity. 2026年
The cellular, immunogenetic, and antigenic factors affecting the breadth of viral antigen variants recognized by human antibody responses are poorly defined. We developed highly multiplexed panels of DNA-tagged SARS-CoV-2 antigens from up to 20 viral variants to label and sort 6,262 antigen-binding circulating B cells from previously naive mRNA vaccinees or infected patients, and from deceased organ donor lymphoid tissues, to enable antigen receptor and transcriptome sequencing. Atypical B cells and a subset of class-switched memory cells with evidence of recent germinal center exposure were enriched for antigen binding. In contrast to atypical B cells, post-germinal center B cells showed progressively increasing variant binding breadth and somatic hypermutation over time. Vaccination, compared with infection, preferentially stimulated B cells expressing antibodies with inherently high antigen-binding breadth. This large-scale analysis reveals key determinants of antigen-binding breadth, critical for understanding responses to viral infection and guiding vaccine development against rapidly mutating viruses.
246. Clinical and translational advances in regulatory T cell-based strategies in allogeneic hematopoietic stem cell transplantation: highlights from ASH 2025.
作者: Somayeh Yazdanparast.;Saeid Abroun.;Tahereh Rostami.;Saeed Mohammadi.
来源: Exp Hematol Oncol. 2026年15卷1期
Regulatory T cells (Tregs), winners of the 2025 Nobel Prize in Physiology or Medicine, emerged as an unsung giant of peripheral immune tolerance after allogeneic hematopoietic stem cell transplantation (allo-HSCT). These cells exert influence across four interconnected immunological axes encompassing graft-versus-leukemia (GVL), graft-versus-host disease (GVHD), relapse, and viral infection. This correspondence highlights key advancements in Treg-based interventions in allo-HSCT, ranging from basic research to clinical applications, as presented at the ASH 2025 Annual Meeting. Accordingly, Tregs are used as GVHD prophylaxis via the Orca-T platform and as a therapeutic strategy for steroid-refractory (SR)-GVHD patients. Experimental studies further pave the way to address existing limitations toward next-generation Treg-based cell therapy in allo-HSCT.
247. Photoactivated probiotic micro-reactor synchronizes STING/TLRs agonists to spatiotemporally synergize antitumor immunotherapy.
作者: Yuzhi Qiu.;Yunting Liu.;Sihan Chen.;Yidi Liu.;Xi Yu.;Xiangliang Yang.;Yan Zhang.;Yanhong Zhu.
来源: J Nanobiotechnology. 2026年
Reprogramming tumor-associated macrophages (TAMs) from the pro-tumoral M2-like state to the immunostimulatory M1-like phenotype has emerged as a promising strategy for tumor therapy. However, most M2-like TAMs are preferentially located in hypoxic regions of the tumor, which are poorly accessible to many advanced drug delivery systems, posing a significant challenge to effective TAM reprogramming. Here, leveraging the tropism of facultative anaerobic bacteria to localize and propagate in the hypoxic tumor, an optogenetically engineered Escherichia coli Nissle 1917 strain conjugated with murine STING agonist (EcNflaB@UPD) was developed for cancer-specific immunotherapy. Upon near-infrared light illumination, the blue and UV emissions from upconversion nanoparticles (UCNPs) simultaneously activate the expression of Toll-like receptor (TLR) agonist, flaB, from EcNflaB, and the release of photocaged murine STING agonist, DMXAA, respectively. This spatiotemporally synchronized dual release ensures co-localized STING and TLR5 agonists inside the hypoxic niche, repolarizing TAMs from the M2 to the M1 phenotype via synergistic TLR5-MAPK1-NF-κB and STING-NF-κB signaling. The polarization of TAMs enhances their antigen-presenting capacity and, more importantly, activates the cytotoxic, stem-like and memory CD8+ T cells responses. This subsequently inhibits tumor growth, relapse, and metastasis in the murine 4T1 tumor model. Collectively, our work introduces the bacteria-based system that uses near-infrared light to dual-release immunotherapeutics for systemic anti-tumor immunity, opening new avenues for precise and effective cancer immunotherapy.
248. Low oxygen preconditioning of umbilical cord MSCs: from biological to mechanistic innovation.
作者: Maryam Hazeri.;Wan Safwani Wan Kamarul Zaman.;Morvarid Akhavan Rezaei.;Pezhman Hafez.;Tan Xin Yee.;Rashidi Dzul Keflee.;Hanita Mohd Hussin.;Muhammad Al Bunyamin Abdul Rahman.
来源: J Transl Med. 2026年 249. Enterococcus faecalis biofilm removal efficacy, cytotoxicity and alkaline phosphatase activity on stem cells after the application of conventional medicaments and novel hydrogels used in regenerative endodontics.250. Sensing and perturbing mammalian cell states with reprogrammable ADAR sensors (RADARS).
作者: Jeremy Koob.;Kaiyi Jiang.;Samantha R Sgrizzi.;Fei Chen.;Omar O Abudayyeh.;Jonathan S Gootenberg.
来源: Nat Protoc. 2026年
Reprogrammable Adenosine Deaminase Acting on RNA (ADAR) Sensors (RADARS) control RNA translation in mammalian cells, allowing for noninvasive sensing or perturbation of specific cell types based on transcriptional signatures. Upon base-pairing between a target RNA and a sensor RNA, RADARS leverages ADAR to edit a premature stop codon upstream of a gene of interest, thereby releasing translation of the desired cargo. These design principles enable sequence programmability, allowing RADARS to adapt more easily to new contexts than existing tools for targeting cell types. We describe a detailed protocol for performing experiments with RADARS, including designing, cloning and validating RADARS constructs targeting a transcript of interest. RADARS guide sequences can be designed with an intuitive web interface and cloned into existing constructs for downstream applications including imaging, sorting and sequencing. We outline recommendations for cargo choice, sensor design and ADAR system selection, enabling users to choose the best workflow depending on the desired application. Beginning with sensor design, the selection of top-performing RADARS guides can be completed in ~2 weeks, followed by a desired use case. Convenient engineering and application of RADARS for various applications enable the design and execution of various cell-targeting experiments.
251. The 5-HT1A receptor antagonist WAY-100635 maleate promotes retinal ganglion cell differentiation and protects the retino-visual circuits.
作者: Sayanta Dutta.;Michelle L Surma.;Jie Chen.;Kavitha Anbarasu.;Jingwei Meng.;Nian Wang.;Arupratan Das.
来源: Commun Med (Lond). 2026年
Growing evidence implicates early metabolic dysfunctions in retinal ganglion cells (RGCs) as a contributor to both high- and normal-tension glaucoma, yet no approved therapy directly protects RGCs to preserve vision. We aimed at identifying a safe, druggable neuroprotective strategy that restores RGC metabolic homeostasis for glaucoma therapy.
252. A randomized comparison of etoposide and cyclophosphamide for stem cell mobilization in newly diagnosed multiple myeloma.
作者: Yao Sun.;Jieping Li.;Yujun Dong.;Meng Li.;Yueqi Wang.;Xilin Chen.;Shunzong Yuan.;Yun Lu.;Yi Ma.;Junli Chen.;Wen Gao.;Wenrong Huang.;Yao Liu.;Xiubin Xiao.
来源: Sci Rep. 2026年
Successful autologous stem cell transplantation (ASCT) in newly diagnosed multiple myeloma (NDMM) patients relies on the efficient mobilization of hematopoietic stem cells following induction therapy. While the efficacy of etoposide for stem cell mobilization has been demonstrated in numerous studies, a randomized comparison of the efficacy of cyclophosphamide versus etoposide has previously been lacking. This randomized, open-label, multicenter trial enrolled NDMM patients eligible for ASCT. The inclusion criteria were patients with a diagnosis of NDMM who required stem cell mobilization prior to ASCT. Patients were randomly assigned to receive either high-dose etoposide (VP16; 1.2 g/m2) or high-dose cyclophosphamide (CTX; 3.0 g/m2) before mobilization. Granulocyte colony-stimulating factor (G-CSF) was administered after chemotherapy to promote stem cell mobilization. The primary endpoint was the proportion of patients achieving CD34 + cell counts ≥ 2 × 10⁶/kg and ≥ 5 × 10⁶/kg. A total of 62 patients were enrolled, with 31 patients in each group. The VP16 group significantly outperformed the CTX group in CD34 + cell collection across all thresholds: ≥2 × 10⁶/kg (100% vs. 77%, p = 0.011), ≥ 5 × 10⁶/kg (90% vs. 55%, p = 0.002), and ≥ 8 × 10⁶/kg (71% vs. 32.3%, p = 0.023). The VP16 group also showed superior success rates in the first apheresis session and achieved higher CD34 + percentages in the collection. Additionally, the VP16 group required fewer apheresis sessions, fewer platelet transfusions, and experienced less nausea during the mobilization period. High-dose etoposide (1.2 g/m2) demonstrated superior efficacy and safety compared to high-dose cyclophosphamide (3.0 g/m2) for stem cell mobilization in NDMM patients. Based on these findings, etoposide may be considered a more effective and safer option for stem cell mobilization in clinical practice.The clinical trial was registered on 24/08/2022 (clinical trial identifier NCT05517213).
253. Depolymerizing F-actin accelerates the exit from pluripotency to enhance stem cell-derived islet differentiation.
作者: Nathaniel J Hogrebe.;Mason D Schmidt.;Punn Augsornworawat.;Sarah E Gale.;Mira Shunkarova.;Jeffrey R Millman.
来源: Nat Commun. 2026年
In this study, we demonstrate that cytoskeletal state at the onset of directed differentiation impacts the exit of human pluripotent stem cells (hPSCs) from pluripotency and downstream lineage specification. In particular, depolymerizing F-actin with latrunculin A (latA) during the first 24 h of definitive endoderm formation facilitates efficient loss of pluripotency and alters Activin/Nodal, BMP, c-Jun, and WNT signaling dynamics. These signaling changes influence downstream patterning of the gut tube, leading to improved pancreatic progenitor identity and decreased expression of markers associated with other endodermal lineages. Continued differentiation generates islets containing a higher percentage of β cells that exhibit improved maturation, insulin secretion, and ability to reverse hyperglycemia. Furthermore, this latA treatment reduces enterochromaffin cells in the final cell population and corrects differentiations from hPSC lines that otherwise fail to consistently produce pancreatic islets, highlighting the importance of cytoskeletal signaling at the onset of directed differentiation.
254. Therapeutic Potential of Engineered Stem Cell Line with Chemokine Receptors and TRAIL/CD::UPRT in Glioblastoma Treatment.
作者: Stephen Ahn.;Soon Min Lee.;Hyo-Jin Kim.;Soon A Park.;Young Chul Sung.;Sin-Soo Jeun.
来源: Cancer Res Treat. 2026年
Glioblastoma (GBM) is an aggressive primary brain tumor marked by a poor prognosis and limited effectiveness of current therapies, which are often accompanied by substantial recurrence rates. To address this challenge, we developed BM03, an engineered mesenchymal stem cell (MSC) line specifically designed for glioblastoma therapy. BM03 is structured to enhance migration to GBM sites and deliver targeted, multimodal gene-based therapies.
255. Identification of CD74-positive antigen presenting glioma cells in primary human tumors and murine models of NF1 high-grade glioma.
作者: Stephanie N Brosius.;Jonathan H Sussman.;Isabella A DiStefano.;Grant P Grothusen.;Keanu N Natan.;Isabelle Seka.;Steven Foltz.;Katherine Labella.;Kristopher R Bosse.;Kai Tan.;Thomas De Raedt.
来源: Mol Cancer Ther. 2026年
Compared to the general population, individuals with Neurofibromatosis Type 1 have a 50-fold higher risk of developing a high-grade glioma (HGG) in their lifetime. Despite improved understanding of the molecular and cellular drivers of these neoplasms, we have yet to translate this knowledge into therapies that improve overall survival. One limitation has been the paucity of in vivo models for drug testing within this population. We generated 3 distinct glioma stem cell lines from high-grade gliomas arising in mice with Nf1 and Trp53 mutations in cis (NPcis) and characterized the allografts resulting from one Nf1-glioma stem cell line (Nf1-HGG17) by single cell and single nuclear RNA-seq. Because our cell lines are grown in stem cell media, there is an inherent reduction of the differentiation states present in primary HGG, with only oligodendrocyte precursor-like and neural-like cells identified. However, orthotopic allografts of Nf1-HGG17 regained the other differentiation states typically observed in HGG and GBM (neuronal progenitor cell-like and astrocyte-like). About half of neoplastic cells cluster separately from these classical groups and highly express genes of the antigen presentation machinery, including Cd74, which we also observed in patient samples. Notably, heterozygosity of Nf1 within the tumor microenvironment does not cause marked changes in the immune tumor microenvironment, gene expression, or differentiation states of neoplastic cells. These data indicate that allografted HGG lines from NPcis mice are an effective model of NF1-HGG, mimicking the complexity observed in human HGG, that can be used for larger scale in vivo drug screening and evaluation.
256. Micrografts-a novel ally in hard-to-heal wounds: a systematic review.
作者: Gianmarco Polverino.;Francesca Russo.;Mariagiovanna Lombardi.;Stefano Formica.;Francesco D'Andrea.
来源: J Wound Care. 2026年35卷4期320-325页
Wound healing is complex, and hard-to-heal (chronic) wounds pose significant treatment challenges, especially in adults. Micrografts (MGs) are emerging as a promising treatment for wounds refractory to conventional approaches. MG involves transplanting a stem cell suspension to the wound to promote healing. Scientific studies on MG are increasing; however, a systematic review is needed for a comprehensive understanding of its efficacy.
257. Investigating the Potential of Gene Editing Technologies in Enhancing Stem Cell Therapy for Alzheimer's Disease.
Alzheimer's disease (AD) is a complex neurodegenerative disorder characterized by progressive cognitive decline and memory loss, significantly affecting the quality of life for millions of people worldwide. Current therapeutic options primarily focus on symptomatic relief, with limited effectiveness in addressing the underlying pathophysiology. Recent advancements in gene editing technologies, particularly CRISPR/Cas9 (Clustered Regularly Interspaced Short Palindromic Repeats), offer promising opportunities to enhance stem cell therapy for AD. This review explores the potential of gene editing to target genetic risk factors associated with AD, such as APOE4 (Apolipoprotein E) and TREM2 (Triggering Receptor Expressed on Myeloid Cells 2), and to improve the differentiation and functionality of induced pluripotent stem cells (iPSCs) derived from AD patients. By creating more accurate disease models and humanized animal systems, researchers can gain a deeper understanding of the mechanisms of AD and evaluate novel therapeutic strategies. Moreover, combining gene editing with stem cell therapy may facilitate cell replacement therapies and the development of exosome-based treatments that modulate neuroinflammation and promote neuroprotection. Despite the promise of these approaches, challenges, such as off-target effects, delivery efficiency, and ethical considerations, remain significant hurdles. This review aims to provide a comprehensive overview of the current state of research, emphasizing the potential of gene editing technologies to revolutionize stem cell therapy for AD and improve patient outcomes.
258. Chitosan Films Incorporating Cellulose Nanofibers or Carbon Nanotubes Differentially Modulate Early Responses of Stem Cells from Human Exfoliated Deciduous Teeth.
作者: Rosana Isabel da Costa Nascimento.;Rebecca Vasconcellos.;Leonara Beatriz Fayer de Almeida Campos.;Eduarda Rocha de Oliveira.;Caroline da Silva Almeida Ferreira.;Luiz Orlando Ladeira.;Luiz Fernando Cappa de Oliveira.;Carlos Magno da Costa Maranduba.;Michele Munk.
来源: ACS Appl Bio Mater. 2026年
Early stem cell-material interactions are critically governed by interfacial physicochemical cues. In this study, chitosan films incorporating cellulose nanofibers (CNFs) or carbon nanotubes (CNTs) were investigated as distinct nanomaterial strategies to modulate the morphology and viability of stem cells from human exfoliated deciduous teeth (SHED). The films were prepared by solvent casting followed by ionic crosslinking and characterized in terms of surface morphology, chemical structure, swelling behavior, and wettability. CNF-containing films exhibited a granular distribution of nanoscale surface features and reduced apparent wettability, whereas CNT-containing films displayed an irregular distribution of nanoscale surface features with greater topographical complexity. SHED responses were evaluated through qualitative morphological assessment, quantitative cell-spreading analysis, metabolic activity assays (Alamar Blue and MTT), and membrane integrity testing (Trypan Blue). CNF/Ch films restricted cell spreading and were associated with reduced metabolic activity and membrane integrity. In contrast, CNT/Ch films supported enhanced cell spreading, maintained high Alamar Blue-derived metabolic activity, and exhibited recovery of membrane integrity after 72 h. Collectively, these findings demonstrate that CNFs and CNTs impart distinct interfacial cues to chitosan films, leading to differential early SHED responses and identifying CNT/Ch as the most supportive formulation among those tested under the present conditions. This work underscores the importance of nanomaterial-driven surface features in guiding early stem cell-material interactions and provides insights for the design of chitosan-based substrates for regenerative medicine applications.
259. Immature Excitatory Neurons in the Postnatal Ferret Paralaminar Nuclei and Their Relationship to the Amygdala Across Species.
作者: Lucía Inés Torrijos-Saiz.;Marco Ghibaudi.;Malaz Sharief.;Lovisa Ljungqvist Brinson.;Arturo Alvarez-Buylla.;José Manuel García-Verdugo.;Vicente Herranz-Pérez.;Shawn Sorrells.
来源: J Comp Neurol. 2026年534卷4期e70155页
The amygdala paralaminar nuclei (PL) contain immature excitatory neurons that develop on a delayed timeline from birth to adulthood and are more prominent in the amygdala of humans and other primates than in rodents. Whether this expansion is linked to brain complexity or is a feature of primates is unknown. We sought to identify the PL in the ferret (Mustela putorius furo), a small, gyrencephalic mammal that does not belong to the primate order. Here, we show that the amygdala of juvenile (P30-P67) and adult ferrets (>1 year) also contains a collection of immature excitatory neurons that express doublecortin (Dcx) and polysialylated neural cell adhesion molecule (Psa-Ncam). Similar to humans and mice, these immature neurons express Tbr1 and CoupTFII, but not FoxP2, which labels neighboring clusters of GABAergic cells in the intercalated nuclei. Ferret PL neurons extend into the ventral basolateral amygdala (BLA) and appear either in dense clusters surrounded by astroglia or as individual cells, and each subpopulation contains neurons with migratory morphology. This expansion of PL neurons into the amygdala is similar to what is seen in humans, but unlike in mice, where PL neurons are infrequent in the BLA. We compared these findings to the marmoset (Callithrix jacchus), a lissencephalic non-human primate, and the swine (Sus scrofa domesticus), a gyrencephalic mammal, and found immature neurons extending into the amygdala in both. Our study identifies the PL region of the ferret amygdala, which contains immature neurons with migratory features in juveniles and adults. Cross-species comparisons indicate that the expansion of PL neurons into the amygdala seen in primates with both high and low gyrencephalic indices has also occurred in species with gyrencephalic brains from different orders.
260. Chromosome Karyotyping in Hematological Malignancies: Current Status and Future Directions.
作者: Cheng-Yang Xu.;Bo Zheng.;Jia-le Chen.;Jie-Yi Zhou.;Guan-Qian Hu.;Ke Yi.;Wei-Tong Du.;Jie He.;Rong Li.
来源: Curr Med Sci. 2026年
Chromosome karyotyping, particularly G-banding, is a fundamental diagnostic and prognostic tool for hematological malignancies, providing a genome-wide view of large-scale numerical and structural chromosomal abnormalities. Its clinical utility is paramount for disease classification, risk stratification, and the evaluation of hematopoietic stem cell transplantation (HSCT) across diseases such as acute myeloid leukemia (AML), chronic lymphocytic leukemia (CLL), multiple myeloma (MM), and myelodysplastic syndromes (MDS). However, clinical challenges including low resolution and culture failure necessitate complementary advanced techniques. Fluorescence in situ hybridization (FISH) targets specific aberrations in non-dividing cells, while array comparative genomic hybridization (aCGH) and single-nucleotide polymorphism (SNP) arrays offer higher resolution for detecting cryptic copy number variations (CNVs) and copy-neutral loss of heterozygosity (CN-LOH). Furthermore, the modern diagnostic standard has evolved into a multi-omics approach that integrates morphology, flow cytometry, karyotyping, and next-generation sequencing (NGS). This comprehensive workflow significantly enhances diagnostic accuracy, refines risk stratification, and informs personalized therapeutic strategies. Clinically, karyotyping is essential for assessing cytogenetic remission, though it is less sensitive for minimal residual disease (MRD) detection than molecular methods. As emerging technologies such as optical genome mapping (OGM) demonstrate the potential to streamline these workflows, karyotyping continues to evolve, solidifying its indispensable role in the comprehensive management of hematologic cancers.
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